Irrigation Dynamics of the TruNatomy Needle in a Minimally Prepared Root Canal: A Computational Fluid Dynamics Analysis

This study investigated the irrigation dynamics of the TruNatomy irrigation needle in a minimally shaped root canal using Computational Fluid Dynamics (CFD). The root canal geometry of an extracted maxillary first molar was reconstructed via micro-Computed Tomography (CT) scan, and the needle dimensions were obtained through stereomicroscopic analysis for Computer-Aided Design (CAD) modelling. The needle was virtually placed 1 mm short of the working length, and a prevalidated CFD model simulated the irrigation process. Irrigant penetration was confined to the needle tip, with a maximum velocity of 4.6 m/s. Wall shear stress of 340 Pa exceeded the threshold for effective debridement, and an apical pressure of 8.4 kPa was recorded at the apical wall. The TruNatomy needle produced uniform, low-magnitude wall shear stress along the lateral vent-facing canal walls, with limited apical irrigant exchange.

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Publication Details

Journal
Australian Endodontic Journal
Published
2026-09-14
DOI
https://doi.org/10.1111/aej.70120
Primary Topic
Endodontics and Root Canal Treatments
Type
article
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article

Irrigation Dynamics of the TruNatomy Needle in a Minimally Prepared Root Canal: A Computational Fluid Dynamics Analysis

Vijay Kumar, Selventhra Savitha, Sidhartha Sharma, Amrita Chawla et al.
Australian Endodontic Journal
Endodontics and Root Canal Treatments
article

Irrigation Dynamics of the TruNatomy Needle in a Minimally Prepared Root Canal: A Computational Fluid Dynamics Analysis

Vijay Kumar, Selventhra Savitha, Sidhartha Sharma, Amrita Chawla, Ajay Logani
article en

Abstract

This study investigated the irrigation dynamics of the TruNatomy irrigation needle in a minimally shaped root canal using Computational Fluid Dynamics (CFD). The root canal geometry of an extracted maxillary first molar was reconstructed via micro-Computed Tomography (CT) scan, and the needle dimensions were obtained through stereomicroscopic analysis for Computer-Aided Design (CAD) modelling. The needle was virtually placed 1 mm short of the working length, and a prevalidated CFD model simulated the irrigation process. Irrigant penetration was confined to the needle tip, with a maximum velocity of 4.6 m/s. Wall shear stress of 340 Pa exceeded the threshold for effective debridement, and an apical pressure of 8.4 kPa was recorded at the apical wall. The TruNatomy needle produced uniform, low-magnitude wall shear stress along the lateral vent-facing canal walls, with limited apical irrigant exchange.

Australian Endodontic Journal
All India Institute of Medical Sciences (IN)
Clean water and sanitation
Openalex Percentile: Top 9%
Endodontics and Root Canal Treatments
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Irrigation Dynamics of the TruNatomy Needle in a Minimally Prepared Root Canal: A Computational Fluid Dynamics Analysis — Vijay Kumar, Selventhra Savitha, et al. · Australian Endodontic Journal (2026) | TGRS Research Map | TGRS